AIDA
GELINA
BRIKEN
nToF
CRIB
ISOLDE
CIRCE
nTOFCapture
DESPEC
DTAS
EDI_PSA
179Ta
CARME
StellarModelling
DCF
K40
AIDA
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> Attachment 2 - analysis from *end* of file AIDA75_1 > > 2D spectrum - FEE # versus timestamp (100us/channel) > > 1D spectrum - projection of timestamp data for FEE # = 6 > > Conclude data synchronised at beginning and end of AIDA75_1. > Period of pulser data ~36ch = 3.6ms => pulser frequency ~ 280Hz > > Attachment 3 - analysis around ts=0x18bacd75c4 +/- 20000000 (dec) > > Conclude FEE # 6 stops producing ADC data c. ch 353 > > Attachment 4 - analysis around ts=0x18cac6144b +/- 20000000 (dec) > > Conclude FEE # 6 starts producing ADC data c. ch 28 > > Spectrum s4100 y-channel calculated as follows > > C IF ( ts.GE.z'18bacd75c4' - 20000000 > C----67--- > C + .AND. > C + ts.LE.z'18bacd75c4' + 20000000 ) THEN > IF ( ts.GE.z'18cac6144b' - 20000000 > C----67--- > + .AND. > + ts.LE.z'18cac6144b' + 20000000 ) THEN > C > C > C Increment ts spectra per FEE64 module > > j = MOD( INT( ts*10.0D-09*1.0D+04 ), 4096 ) > IF ( j.EQ.0 ) THEN > DO k = 0, 4095 > DO l = 1, 31 > CALL set2d( 4100, l, k, 0 ) > ENDDO > ENDDO > ENDIF > CALL inc2d( 4100, module, j ) > > ENDIF
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